IP Library Granted Patent US 7,766,606
Granted Patent B2
US 7,766,606 · App. 11/506,077 · Granted Aug 3, 2010

Turbine airfoil cooling system with platform cooling channels with diffusion slots

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Quick Facts
Patent No.
US 7,766,606
App. No.
11/506,077
Granted
Aug 3, 2010
Kind
B2
Abstract

A cooling system for a turbine airfoil of a turbine engine having suction side platform cooling channels and pressure side platform cooling channels for cooling hot spots in a platform attached to a turbine blade. The cooling system may include one or more pressure side platform cooling chambers having a diffusion slot for cooling downstream platforms on the suction side of the turbine blade. The diffusion slots reduce the velocity of the cooling fluids released from the platform to increase the capacity of the film cooling of downstream platforms.

Claims (37)

1. A turbine airfoil, comprising:

a generally elongated, hollow airfoil having a leading edge, a trailing edge, a tip section at a first end, a root coupled to the airfoil at an end generally opposite the first end for supporting the airfoil and for coupling the airfoil to a disc, a platform at the intersection between the root and the generally elongated, hollow airfoil and extending generally orthogonal to a longitudinal axis of the generally elongated, hollow airfoil, and a cooling system formed from at least one cavity in the elongated, hollow airfoil;

at least one suction side platform edge cooling channel in the platform and extending generally along a first outer edge of the platform on a suction side of the generally elongated, hollow airfoil;

at least one suction side platform cooling channel in the platform and extending from the at least one suction side platform edge cooling channel to a downstream edge of the platform generally along the suction side of the generally elongated, hollow airfoil such that the at least one suction side platform cooling channel is nonparallel and nonorthogonal relative to the at least one suction side platform edge and the downstream edge of the platform and wherein at least one suction side platform cooling channel is positioned generally tangential to the suction side of an adjacent turbine blade;

at least one pressure side platform cooling channel in the platform and extending generally along an outer edge of the platform on a pressure side of the generally elongated, hollow airfoil; and

wherein the at least one pressure side platform cooling channel comprises a diffusion slot extending at an acute angle from the at least one pressure side platform cooling channel to a second side edge of the platform on the pressure side of the generally elongated, hollow airfoil that is generally opposite to the first side edge.

2. The turbine airfoil of claim 1 , wherein the at least one pressure side platform cooling channel comprises a plurality of pressure side platform cooling channels.

3. The turbine airfoil of claim 2 , wherein the plurality of pressure side platform cooling channels are positioned generally parallel to each other.

4. The turbine airfoil of claim 3 , wherein each pressure side platform cooling channel of the plurality of pressure side platform cooling channels comprises a diffusion slot, wherein the diffusion slots are positioned adjacent to each other along the second side edge between an upstream edge to the downstream edge.

5. The turbine airfoil of claim 4 , wherein the diffusion slots have a ratio of a cross-sectional area of an exhaust opening relative to a cross-sectional area of an inlet opening that is generally between about 2 to 1 and about 7 to 1.

6. The turbine airfoil of claim 5 , wherein the diffusion slots have a ratio of a cross-sectional area of an exhaust opening relative to a cross-sectional area of an inlet opening that is generally about 5 to 1.

7. The turbine airfoil of claim 2 , wherein the plurality of pressure side platform cooling channels comprises three pressure side platform cooling channels positioned generally adjacent to each other.

8. The turbine airfoil of claim 1 , wherein the at least one pressure side platform cooling channel includes a length to diameter ratio of between about 25 to 1 and about 70 to 1.

9. The turbine airfoil of claim 1 , wherein the diffusion slot is positioned to direct cooling fluids in close proximity and generally tangential to the suction side of an adjacent turbine blade.

10. A turbine airfoil, comprising:

a generally elongated, hollow airfoil having a leading edge, a trailing edge, a tip section at a first end, a root coupled to the airfoil at an end generally opposite the first end for supporting the airfoil and for coupling the airfoil to a disc, a platform at the intersection between the root and the generally elongated, hollow airfoil and extending generally orthogonal to a longitudinal axis of the generally elongated, hollow airfoil, and a cooling system formed from at least one cavity in the elongated, hollow airfoil;

at least one suction side platform edge cooling channel in the platform and extending generally along a first outer edge of the platform on a suction side of the generally elongated, hollow airfoil;

at least one suction side platform cooling channel in the platform and extending from the at least one suction side platform edge cooling channel to a downstream edge of the platform generally along the suction side of the generally elongated, hollow airfoil such that the at least one suction side platform cooling channel is nonparallel and nonorthogonal relative to the at least one suction side platform edge and the downstream edge of the platform and wherein at least one suction side platform cooling channel is positioned generally tangential to the suction side of an adjacent turbine blade;

a plurality of pressure side platform cooling channels in the platform and extending generally along an outer edge of the platform on a pressure side of the generally elongated, hollow airfoil; and

wherein at least one of the pressure side platform cooling channels comprises a diffusion slot extending at an acute angle from one of the pressure side platform cooling channels to a second side edge of the platform on the pressure side of the generally elongated, hollow airfoil that is generally opposite to the first side edge.

11. The turbine airfoil of claim 10 , wherein the plurality of pressure side platform cooling channels are positioned generally parallel to each other.

12. The turbine airfoil of claim 10 , wherein each pressure side platform cooling channel of the plurality of pressure side platform cooling channels comprises a diffusion slot, wherein the diffusion slots are positioned adjacent to each other along the second side edge between an upstream edge to the downstream edge.

13. The turbine airfoil of claim 10 , wherein the diffusion slot has a ratio of a cross-sectional area of an exhaust opening relative to a cross-sectional area of an inlet opening that is generally between about 2 to 1 and about 7 to 1.

14. The turbine airfoil of claim 13 , wherein the diffusion slot has a ratio of a ratio of a cross-sectional area of an exhaust opening relative to a cross-sectional area of an inlet opening that is generally about 5 to 1.

15. The turbine airfoil of claim 10 , wherein the plurality of pressure side platform cooling channels comprise three pressure side platform cooling channels positioned generally adjacent to each other.

16. The turbine airfoil of claim 10 , wherein the plurality of pressure side platform cooling channels includes a length to diameter ratio of between about 25 to 1 and about 70 to 1.

17. The turbine airfoil of claim 10 , wherein the diffusion slot is positioned to direct cooling fluids in close proximity and generally tangential to the suction side of an adjacent turbine blade.

18. A turbine airfoil, comprising:

a generally elongated, hollow airfoil having a leading edge, a trailing edge, a tip section at a first end, a root coupled to the airfoil at an end generally opposite the first end for supporting the airfoil and for coupling the airfoil to a disc, a platform at the intersection between the root and the generally elongated, hollow airfoil and extending generally orthogonal to a longitudinal axis of the generally elongated, hollow airfoil, and a cooling system formed from at least one cavity in the elongated, hollow airfoil;

at least one suction side platform edge cooling channel in the platform and extending generally along a first outer edge of the platform on a suction side of the generally elongated, hollow airfoil;

at least one suction side platform cooling channel in the platform and extending from the at least one suction side platform edge cooling channel to a downstream edge of the platform generally along the suction side of the generally elongated, hollow airfoil such that the at least one suction side platform cooling channel is nonparallel and nonorthogonal relative to the at least one suction side platform edge and the downstream edge of the platform;

a plurality of pressure side platform cooling channels positioned generally parallel to each other in the platform and extending generally along an outer edge of the platform on a pressure side of the generally elongated, hollow airfoil;

wherein the pressure side platform cooling channels each comprise a diffusion slot extending at an acute angle from the pressure side platform cooling channels to a second side edge of the platform on the pressure side of the generally elongated, hollow airfoil that is generally opposite to the first side edge;

wherein the diffusion slots are positioned adjacent to each other along the second side edge between an upstream edge to the downstream edge; and

wherein the diffusion slot is positioned to direct cooling fluids in close proximity and generally tangential to the suction side of an adjacent turbine blade.

19. The turbine airfoil of claim 18 , wherein the diffusion slot has a ratio of a cross-sectional area of an exhaust opening relative to a cross-sectional area of an inlet opening that is generally between about 2 to 1 and about 7 to 1.

20. The turbine airfoil of claim 18 , wherein the plurality of pressure side platform cooling channels includes a length to diameter ratio of between about 25 to 1 and about 70 to 1.

Assignments (2)
CHANGE OF NAME Recorded Mar 31, 2009
From: SIEMENS POWER GENERATION, INC.
To: SIEMENS ENERGY, INC.
Reel/Frame 022488/0630 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2006
From: LIANG, GEORGE
To: SIEMENS POWER GENERATION, INC.
Reel/Frame 018193/0818 →